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首页> 外文期刊>Journal of Materials Science >Mossbauer spectroscopic study of heat-treated and control-cooled Fe3Al alloys
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Mossbauer spectroscopic study of heat-treated and control-cooled Fe3Al alloys

机译:热处理和控制冷却的Fe3Al合金的Mossbauer光谱研究

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The Fe-Al system forms a model object of transition metal-sp element system. FE-Al alloys containing 21-31 at % Al are known to exhibit several attractive physical properties which render them candidate materials for structural and magnetic applications. These magnetic and physical properties can be varied by altering the composition and the processing routes. Keeping this in mind, Mossbauer spectra of five Fe-24 at % Al and Fe-25 at % Al alloy samples processed via different routes have been studied. The analysis of the Mossbauer parameters, distribution of hyperfine magnetic fields, P(H) and H-values were used to identify various Fe-atom configurations (nearest neighbour or next nearest neighbour) associated with the phases formed by different processing routes. The results obtained from the present study indicate that the average hyperfine field [H] depends on the average rate of cooling followed during the precipitation of these phases. [References: 17]
机译:Fe-Al体系构成过渡金属-sp元素体系的模型对象。已知含有21-31 at%Al的FE-Al合金表现出几种吸引人的物理性能,使其成为结构和磁性应用的候选材料。这些磁性和物理性质可以通过改变组成和加工路线来改变。牢记这一点,已经研究了通过不同途径处理的五个Fe-24 at%Al和Fe-25 at%Al合金样品的Mossbauer光谱。通过分析Mossbauer参数,超精细磁场分布,P(H)和H值来确定与不同加工路线所形成的相相关的各种Fe原子构型(最近的邻居或下一个最近的邻居)。从本研究中获得的结果表明,平均超精细场[H]取决于这些相的沉淀过程中遵循的平均冷却速率。 [参考:17]

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